首页> 外文期刊>Journal of power sources >Improved Performance Of Air-cathode Single-chamber Microbial Fuel Cell For Wastewater Treatment Using Microfiltration Membranes And Multiple Sludge Inoculation
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Improved Performance Of Air-cathode Single-chamber Microbial Fuel Cell For Wastewater Treatment Using Microfiltration Membranes And Multiple Sludge Inoculation

机译:使用微滤膜和多污泥接种法改进空气阴极单室微生物燃料电池处理废水的性能

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Substantial optimization and cost reduction are required before microbial fuel cells (MFCs) can be practically applied. We show here the performance improvement of an air-cathode single-chamber MFC by using a microfiltration membrane (MFM) on the water-facing side of the cathode and using multiple aerobic sludge (AES), anaerobic sludge (ANS). and wetland sediment (WLS) as anodic inoculums. Batch test results show that the MFC with an MFM resulted in an approximately two-fold increase in maximum power density compared to the MFC with a proton exchange membrane (PEM). The Coulombic efficiency increased from 4.17% to 5.16% in comparison with the membrane-less MFC, without a significant negative effect on power generation and internal resistance. Overall performance of the MFC was also improved by using multiple sludge inoculums in the anode. The MFC inoculated with ANS + WLS produced the greatest maximal power density of 373mWm~(-2) with a substantially low internal resistance of 38 Ω. Higher power density with a decreased internal resistance was also achieved in MFC inoculated with ANS + AES and ANS + AES + WLS in comparison with those inoculated with only one sludge. The MFCs inoculated with AES + ANS achieved the highest Coulombic efficiency. Over 92% COD was removed from confectionery wastewater in all tested MFCs, regardless of the membrane or inoculum used.
机译:在实际应用微生物燃料电池(MFCs)之前,需要进行大量优化和降低成本。我们在这里展示了通过在阴极的水侧使用微滤膜(MFM)并使用多种好氧污泥(AES),厌氧污泥(ANS)来改善空气阴极单室MFC的性能。和湿地沉积物(WLS)作为阳极接种物。批量测试结果显示,与带有质子交换膜(PEM)的MFC相比,带有MFM的MFC导致最大功率密度提高了大约两倍。与无膜MFC相比,库仑效率从4.17%提高到5.16%,而对发电和内阻没有明显的负面影响。通过在阳极中使用多个污泥接种物,也改善了MFC的整体性能。接种ANS + WLS的MFC产生的最大最大功率密度为373mWm〜(-2),而内部电阻为38Ω。与仅接种一种污泥的MFC相比,接种ANS + AES和ANS + AES + WLS的MFC也实现了更高的功率密度和更低的内阻。接种AES + ANS的MFC获得了最高的库仑效率。无论使用哪种膜或接种物,在所有测试的MFC中,糖食废水中的COD去除率均超过92%。

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